US11484205B2ExpiredUtilityA1

Physiological measurement device

Assignee: MASIMO CORPPriority: Mar 25, 2002Filed: May 14, 2019Granted: Nov 1, 2022
Est. expiryMar 25, 2022(expired)· nominal 20-yr term from priority
Inventors:Ammar Al-Ali
A61B 5/0015A61B 5/02438A61B 5/002A61B 5/0004A61B 5/742Y10S128/903A61B 5/6826A61B 2560/0214A61B 5/6824A61B 5/7271A61B 5/6838A61B 5/0026A61B 5/021G08B 21/0453A61B 5/7425A61B 5/02427A61B 2562/227A61B 2562/222A61B 5/332A61B 5/7475A61B 5/14552A61B 5/6831A61B 5/72H04W 4/70A61B 5/0205A61B 5/7445A61B 5/1455A61B 5/7228A61B 5/0024A61B 5/318A61B 5/30A61B 5/14551A61B 5/02416A61B 5/307
85
PatentIndex Score
2
Cited by
2,354
References
13
Claims

Abstract

A sensor interface is configured to receive a sensor signal. A transmitter generates a transmit signal. A receiver receives the signal corresponding to the transmit signal. Further, a monitor interface is configured to communicate a waveform to the monitor so that measurements derived by the monitor from the waveform are generally equivalent to measurements derivable from the sensor signal.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
       1. A patient monitoring system comprising:
 a portable patient monitoring device comprising:
 a pulse oximetry sensor configured to be attached to a digit of a patient, the pulse oximetry sensor including at least:
 a light emitter configured to emit light into a tissue site of the digit of the patient; and 
 a light detector configured to output a sensor signal responsive to at least a portion of the emitted light after attenuation by tissue of the tissue site; 
 
 a housing configured to be secured to an arm of the patient, wherein the housing comprises at least:
 a top surface; 
 a bottom surface opposite the top surface; and 
 a side surface that joins the top surface and the bottom surface; 
 
 a strap mountable to the housing, the strap configured to secure the housing to the arm of the patient such that the bottom surface of the housing is flush with the arm of the patient; 
 a cable extending from the pulse oximetry sensor and configured to electrically convey the sensor signal, wherein:
 the cable connects with the housing at a position on the side surface of the housing, 
 the side surface of the housing runs perpendicular to the long axis of the arm of the patient when the housing is secured to the arm of the patient, 
 the position is located at a mid-section of a height of the housing, and 
 the cable is configured to at least partially extend from the side surface of the housing along a path perpendicular to the side surface of the housing; 
 
 one or more signal processors configured to generate, responsive at least in part to the sensor signal, a transmit signal including information indicative of measurements of physiological parameters including at least oxygen saturation and pulse rate; and 
 a signal transmitter configured to wirelessly transmit the transmit signal to a receiver computing system; and 
 
 the receiver computing system configured to:
 adapt or process the transmit signal to be usable by the receiver computing system for displaying measurements of oxygen saturation and pulse rate on a display of the receiver computing system; and 
 cause display of the measurements of the physiological parameters on a display of the receiver computing system. 
 
 
     
     
       2. The patient monitoring system of  claim 1 , wherein the one or more signal processors comprise at least:
 one or more front-end processors and/or signal processors configured to:
 receive the sensor signal from the light detector; and 
 process the sensor signal to generate a conditioned signal by at least one of: amplification, filtering, analog to digital conversion, buffering, data rate modification, digital filtering, adaptive filtering, smoothing, averaging, or frequency transforming; 
 derive, from the conditioned signal, information indicative of the physiological parameters; and 
 provide the information indicative of the physiological parameters to the signal transmitter as the transmit signal. 
 
 
     
     
       3. The patient monitoring system of  claim 1 , wherein the receiver computing system comprises a multi-parameter patient monitor and a receiver device that is compatible with a sensor port of the multi-parameter patient monitor and configured to receive the receive the transmit signal and provide the information indicative of the measurements of the physiological parameters to the multi-parameter patient monitor via the sensor port. 
     
     
       4. The patient monitoring system of  claim 3 , wherein the receiver device is configured to adapt or process the transmit signal to a monitor-compatible signal that is compatible with the sensor port of the multi-parameter patient monitor. 
     
     
       5. The patient monitoring system of  claim 1 , wherein the transmit signal further includes raw data indicative of the sensor signal from the light detector. 
     
     
       6. The portable patient monitoring system device of  claim 1  further comprising:
 a multiplexer configured to generate a single digital word or bit stream based at least in part on the sensor signal; and 
 an encoder configured to encode the single digital word or bit stream to generate a baseband signal, 
 wherein the one or more signal processors and/or the signal transmitter is further configured to modulate the baseband signal with a carrier to generate the transmit signal. 
 
     
     
       7. The patient monitoring system of  claim 6 , wherein the baseband signal comprises at least one of: a single signal, multiple related signal components including in-phase signals, or multiple related signal components including quadrature signals. 
     
     
       8. The patient monitoring system of  claim 7 , wherein the signal transmitter is further configured to transmit on multiple frequency channels. 
     
     
       9. The patient monitoring system of  claim 8 , wherein the measurements of the physiological parameters comprise real time measurements. 
     
     
       10. The patient monitoring system of  claim 9 , wherein the transmit signal includes at least waveform data. 
     
     
       11. The patient monitoring system of  claim 1 , wherein the physiological parameters further include perfusion index. 
     
     
       12. A method of gathering physiological data from a patient, the method comprising:
 providing a patient monitoring system according to  claim 1 ; 
 securing the portable patient monitoring device to the patient; and 
 activating the portable patient monitoring device to commence gathering of physiological data from the patient. 
 
     
     
       13. The method of  claim 12  further comprising:
 enabling the portable patient monitoring device to communicate with the receiver computing system; and 
 causing display of the measurements of the physiological parameters.

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